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Environmental DNA Metabarcoding: A Novel Method for Biodiversity Monitoring of Marine Fish Communities
Annual Review of Marine Science ( IF 17.3 ) Pub Date : 2022-01-03 , DOI: 10.1146/annurev-marine-041421-082251
Masaki Miya 1
Affiliation  

Environmental DNA (eDNA) is genetic material that has been shed from macroorganisms. It has received increased attention as an indirect marker for biodiversity monitoring. This article reviews the current status of eDNA metabarcoding (simultaneous detection of multiple species) as a noninvasive and cost-effective approach for monitoring marine fish communities and discusses the prospects for this growing field. eDNA metabarcoding coamplifies short fragments of fish eDNA across a wide variety of taxa and, coupled with high-throughput sequencing technologies, allows massively parallel sequencing to be performed simultaneously for dozens to hundreds of samples. It can predict species richness in a given area, detect habitat segregation and biogeographic patterns from small to large spatial scales, and monitor the spatiotemporal dynamics of fish communities. In addition, it can detect an anthropogenic impact on fish communities through evaluation of their functional diversity. Recognizing the strengths and limitations of eDNA metabarcoding will help ensure that continuous biodiversity monitoring at multiple sites will be useful for ecosystem conservation and sustainable use of fishery resources, possibly contributing to achieving the targets of the United Nations’ Sustainable Development Goal 14 for 2030.

中文翻译:


环境 DNA 元条形码:海洋鱼类群落生物多样性监测的新方法

环境 DNA (eDNA) 是从宏观生物中脱落的遗传物质。作为生物多样性监测的间接标志物,它受到了越来越多的关注。本文回顾了 eDNA 元条形码(同时检测多个物种)作为监测海洋鱼类群落的非侵入性和成本效益高的方法的现状,并讨论了这一不断发展的领域的前景。eDNA 元条形码可将鱼类 eDNA 的短片段在各种分类群中进行协同扩增,并结合高通量测序技术,允许同时对数十到数百个样本进行大规模并行测序。它可以预测给定区域的物种丰富度,检测从小到大空间尺度的栖息地隔离和生物地理模式,并监测鱼类群落的时空动态。此外,它可以通过评估其功能多样性来检测人为对鱼类群落的影响。认识到 eDNA 元条形码的优势和局限性将有助于确保在多个地点持续监测生物多样性将有助于生态系统保护和渔业资源的可持续利用,可能有助于实现联合国 2030 年可持续发展目标 14 的目标。

更新日期:2022-01-04
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